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A Permanent-Magnet Microwave Ion Source For A Compact High-Yield Neutron Generator

机译:紧凑型高产中子发生器的永磁微波离子源

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We present recent work on the development of a microwave ion source that will be used in a high-yield compact neutron generator for active interrogation applications. The sealed tube generator will be capable of producing high neutron yields, 5X10~(11) n/s for D-T and approx1X10~(10) n/s for D-D reactions, while remaining transportable. We constructed a microwave ion source (2.45 GHz) with permanent magnets to provide the magnetic field strength of 87.5 mT necessary for satisfying the electron cyclotron resonance (ECR) condition. Microwave ion sources can produce high extracted beam currents at the low gas pressures required for sealed tube operation and at lower power levels than previously used RF-driven ion sources. A 100 mA deuterium/tritium beam will be extracted through a large slit (60X6 mm~(2)) to spread the beam power over a larger target area. This paper describes the design of the permanent-magnet microwave ion source and discusses the impact of the magnetic field design on the source performance. The required equivalent proton beam current density of 40 mA/cm~(2) was extracted at a moderate microwave power of 400 W with an optimized magnetic field.
机译:我们提出了最近关于开发微波离子源的工作,用于高产紧凑型中子发生器,用于有源询问应用。密封管发生器将能够产生高中中子产率,5×10〜(11)n / s,用于D-D的D-D反应,同时剩余可运输。我们构建了一种具有永磁体的微波离子源(2.45GHz),为满足电子回旋共振(ECR)条件提供87.5 mt的磁场强度。微波离子源可以在密封管操作所需的低气体压力下和比先前使用的RF驱动离子源更低的功率水平产生高提取的梁电流。 100 mA氘/氚梁将通过大型狭缝(60x6mm〜(2))提取,以将光束功率扩展到更大的目标区域。本文介绍了永磁微波离子源的设计,并探讨了磁场设计对源性能的影响。在400W的中等微波功率下,用优化的磁场以400W的中等微波功率提取所需的等效质子束电流密度。

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